Co-Hydroprocessing of Fossil Middle Distillate and Bio-Derived Durene-Rich Heavy Ends under Hydrotreating Conditions

Author:

Graf David1,Waßmuth Johannes1ORCID,Rauch Reinhard1ORCID

Affiliation:

1. Engler-Bunte-Institute–Division of Fuel Technology, Karlsruhe Institute of Technology, Engler-Bunte-Ring 1a, 76131 Karlsruhe, Germany

Abstract

Methanol-to-gasoline (MTG) and dimethyl ether-to-gasoline (DTG), as industrially approved processes for producing greenhouse gas-neutral gasoline, yield byproducts rich in heavy mono-ring aromatics such as 1,2,4,5-tetramethylbenzene (durene). Due to its tendency to crystallize and the overall poor fuel performance, the heavy fuel fraction is usually further processed using after-treatment units designed for this purpose. This research article discusses the co-hydroprocessing (HP) of bio-derived heavy gasoline (HG) with fossil middle distillate (MD), drawing on available refinery hydrotreaters. Co-HP experiments were conducted in a laboratory-scale fixed bed reactor using an industrial CoMo/γ-Al2O3 catalyst, varying the space-time between 0.7 and 4.0 cmCat3 h cmFeed−3 and the reaction temperature between 340 and 390 °C. In addition to the durene conversion, special attention was paid to the octane and cetane numbers (CN) of gasoline and MD, respectively. A six-lump model with ten parameters was developed to predict relevant fuel yields dependent on the process conditions. Under stable catalyst conditions, C10 aromatic conversions of more than 60% were obtained, while the CN remained close to that of pure MD. Harsh process conditions increased the gasoline yield up to 20% at the cost of MD, while the kerosene yield remained almost constant. With an optimized lumping model, fuel yields could be predicted with an R2 of 0.998. In this study, co-HP heavy aromatic-rich MTG/DTG fuels with fossil MD were proven to be a promising process strategy compared to a stand-alone after-treatment.

Funder

Strategic Dialogue Automotive Industry SDA

Ministry of Transport Baden-Wuerttemberg

Publisher

MDPI AG

Subject

General Medicine

Reference81 articles.

1. Our World in Data (2023, February 06). Global Direct Primary Energy Consumption. Available online: https://ourworldindata.org/grapher/global-primary-energy.

2. European Commission (2019). Communication from the Commission of the European Parliament, the European Council, the Council, the European Economic and Social Committee and the Committee of the Regions: The European Green Deal.

3. The European Parliament and the Council of the European Union (2021). Regulation (EU) 2021/1119 of the European Parliament and of the Council of 30 June 2021 Establishing the Framework for Achieving Climate Neutrality and Amending Regulations (EC) No 401/2009 and (EU) 2018/1999 (’European Climate Law’): Regulation 2021/1119, The European Parliament and the Council of the European Union.

4. European Commission (2021). Communication from the Commission to the European Parliament, the Council, the European Economic and Social Committee and the Committee of the Regions: ’Fit for 55’: Delivering the EU’s 2030 Climat Target on the Way to Climate Neutrality.

5. Abnett, K. (2022, November 25). EU Approves Effective Ban on New Fossil Fuel Cars from 2035. Available online: https://www.reuters.com/markets/europe/eu-approves-effective-ban-new-fossil-fuel-cars-2035-2022-10-27/.

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